FORD WSS-M1A358-A1-2007 STEEL SHEET BORON TREATED ALUMINIZED HIGH STRENGTH COLD FORMABLE (NORTH AMERICA APPLICATIONS) TO BE USED WITH FORD WSS-M99P1111-A 《冷压成型硼处理镀铝高强度薄钢板(北美应用)(与.pdf
《FORD WSS-M1A358-A1-2007 STEEL SHEET BORON TREATED ALUMINIZED HIGH STRENGTH COLD FORMABLE (NORTH AMERICA APPLICATIONS) TO BE USED WITH FORD WSS-M99P1111-A 《冷压成型硼处理镀铝高强度薄钢板(北美应用)(与.pdf》由会员分享,可在线阅读,更多相关《FORD WSS-M1A358-A1-2007 STEEL SHEET BORON TREATED ALUMINIZED HIGH STRENGTH COLD FORMABLE (NORTH AMERICA APPLICATIONS) TO BE USED WITH FORD WSS-M99P1111-A 《冷压成型硼处理镀铝高强度薄钢板(北美应用)(与.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 ENGINEERING MATERIAL SPECIFICATIONDate Action Revisions 2007 02 08 Activated D. Jordan Printed copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 1 of 5 STEEL, SHEET, BORON TREATED, ALUMINIZED, HIGH STRENGTH, WSS-M1A358-A1 COLD FORMABLE (NORTH AMERICA APPLICATIONS) 1. SCOPE
2、The material defined by this specification is a fully killed, fine grained, hot dip aluminized, high strength, boron treated steel. Component manufacture shall be by pre-forming and subsequent heat treatment (austenitization and quenching) with or without additional hot forming/die quenching (press
3、hardening). 2. APPLICATION This specification was released originally for A and B pillar reinforcements, where a high strength-to-weight ratio is required. Mechanical properties of the fully processed part shall meet the requirements of WSS-M99P39-A1/A4 or shall be listed in detail on the individual
4、 part Engineering Drawing. Mechanical properties of the fully processed part are a function of the specific press hardening process selected for part manufacture. The complete part fabrication process shall be outlined in detail in the Process Flow Diagram/PFMEA and maintained in accordance with the
5、 documented Control Plan. 2.1 LIMITATIONS Due to the hardenability response of this material, individual welding schedules must be developed for each application (see also para. 3.7.) Forming of the blank prior to austenitization is expected for materials supplied to this specification Austenitizati
6、on by induction heating is not allowed. Stress relief annealing or hydrogen bake-out processes (per WSS-M99A3-A) may be necessary for certain process paths and shall be described in detail in the part Suppliers Control Plan. De-scaling parts by acid pickling is not allowed. 3. REQUIREMENTS 3.1 STAND
7、ARD REQUIREMENTS FOR PRODUCTION MATERIALS Material suppliers and part producers must conform to the Companys Standard Requirements For Production Materials (WSS-M99P1111-A). ENGINEERING MATERIAL SPECIFICATIONWSS-M1A358-A1 Printed copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC
8、Page 2 of 5 3.2 DIMENSIONS AND DIMENSIONAL TOLERANCES 3.2.1 Thickness and Thickness Tolerances The material thickness specified on the Engineering Drawing shall be nominal and shall include both the substrate thickness and the coating thickness. The nominal incoming material thickness in each area o
9、f parts made with multiple-thickness blanks (e.g., tailor welded or tailor rolled) shall be identified on the Engineering Drawing. Specified Nominal Thickness (mm) Tolerance (mm) 0.8 1.19 +/- 0.07 1.2 1.49 +/- 0.08 1.5 1.99 +/- 0.09 2.0 2.59 +/- 0.11 2.6 3.0 +/- 0.14 Refer to WSS-M99P39-A1/A4 for th
10、e allowable thickness reduction that results from the press hardening process. 3.2.2 Other Dimensional Tolerances Length, width, flatness, camber, and mass tolerances for the material as delivered by the steel supplier are defined by the relevant national standards. 3.3 MANUFACTURING/PROCESS REQUIRE
11、MENTS Final material properties in the part are achieved by heat treatment. Forming of the blank prior to austenitization is expected for materials supplied to this specification. Austenitization by induction heating is not allowed. Quenching shall be accomplished by any method (e.g., coolant - jack
12、eted die, direct water contact) that achieves the required final part properties. The specific method shall be described in detail in the part Suppliers Control Plan. The microstructure of the steel in the final part shall be effectively 100% tempered martensite with a small amount of bainite likely
13、 and allowed. Stress relief annealing or hydrogen bake-out processes (per WSS-M99A3-A) may be necessary for certain process paths and shall be described in detail in the part Suppliers Control Plan. De-scaling parts by acid pickling is not allowed. ENGINEERING MATERIAL SPECIFICATIONWSS-M1A358-A1 Pri
14、nted copies are uncontrolled Copyright 2007, Ford Global Technologies, LLC Page 3 of 5 3.4 CHEMICAL COMPOSITION (check analysis, weight percent) C 0.25 max Mn 1.40 max P 0.030 max S 0.015 max Si 0.50 max Cr 0.35 max Mo 0.35 max B 0.0050 max N 0.009 max Al * Ti * Ca * Cu, Ni, Sn, Nb, V * * Sufficient
15、 to fully kill the steel. * Sufficient to stabilize nitrogen. * Sufficient for sulfide inclusion shape control * No requirement. All listed elements shall be reported for initial material source approval and shall be listed on the steel Suppliers Control Plan if added intentionally. The upper and lo
16、wer limits for each of the controlled elements shall be established by the Supplier and included in the steel Suppliers Control Plan. Sulfide inclusion shape control is required and shall be accomplished by calcium additions. 3.5 MECHANICAL PROPERTIES (as delivered by steel supplier) (Transverse tes
17、t specimens, 50 mm gage length) (ISO 6892/ASTM E 8M/EN 10002/JFS A 2001) Yield Strength (MPa) 550 max % Elongation 10 min Mechanical properties in the fully processed part shall comply with WSS-M99P39-A1/A4 and any other requirements listed on the Engineering Drawing, CAD file, or related documents.
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